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Meenal Datta

Showing results (1-10 of 56) with videos related to

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Biorxiv : the Preprint Server for Biology|June 3, 2024
Simulating the Impact of Tumor Mechanical Forces on Glymphatic Networks in the Brain ParenchymaSaeed Siri, Alice Burchett, Meenal Datta
Biomechanics and Modeling in Mechanobiology|September 19, 2024
Simulating the impact of tumor mechanical forces on glymphatic networks in the brain parenchymaSaeed Siri, Alice Burchett, Meenal Datta
Cancers|July 14, 2023
Atomic Force Microscopy Methods to Measure Tumor Mechanical PropertiesJulian Najera, Matthew R Rosenberger, Meenal Datta
Biomechanics and Modeling in Mechanobiology|June 3, 2026
Mechanisms of inflammatory response in secondary brain injury: a review of computational approaches, challenges, and future directionsFatemeh Jafarabadi, Meenal Datta, Maria A Holland
Frontiers in Oncology|September 5, 2022
Mechanical and metabolic interplay in the brain metastatic microenvironmentKillian Onwudiwe, Alice A Burchett, Meenal Datta
Cells|December 11, 2022
Do Tumor Mechanical Stresses Promote Cancer Immune Escape?Killian Onwudiwe, Julian Najera, Saeed Siri, et al.
Research Square|June 5, 2025
Histone deacetylase inhibitors sensitize glioblastoma models to temozolomide and reprogram immunosuppressive myeloid cellsGolnaz Asaadi Tehrani, Becca Kubick, Maksym Zarodniuk, et al.
Scientific Reports|October 21, 2025
Histone deacetylase inhibitors sensitize glioblastoma models to temozolomide and reprogram immunosuppressive myeloid cellsGolnaz Asaadi Tehrani, Rebecca N Kubick, Maksym Zarodniuk, et al.
Research Square|June 9, 2023
Pan-cancer transcriptomic analysis of CNS tumor stroma identifies a population of perivascular fibroblasts that predict poor immunotherapy response in glioblastoma patientsMaksym Zarodniuk, Alexander Steele, Xin Lu, et al.
NPJ Genomic Medicine|October 26, 2023
CNS tumor stroma transcriptomics identify perivascular fibroblasts as predictors of immunotherapy resistance in glioblastoma patientsMaksym Zarodniuk, Alexander Steele, Xin Lu, et al.
Pageof 6

Showing results (1-10 of 56) with videos related to

Sort By:
Pageof 6
Biorxiv : the Preprint Server for Biology|June 3, 2024
Simulating the Impact of Tumor Mechanical Forces on Glymphatic Networks in the Brain ParenchymaSaeed Siri, Alice Burchett, Meenal Datta
Biomechanics and Modeling in Mechanobiology|September 19, 2024
Simulating the impact of tumor mechanical forces on glymphatic networks in the brain parenchymaSaeed Siri, Alice Burchett, Meenal Datta
Cancers|July 14, 2023
Atomic Force Microscopy Methods to Measure Tumor Mechanical PropertiesJulian Najera, Matthew R Rosenberger, Meenal Datta
Biomechanics and Modeling in Mechanobiology|June 3, 2026
Mechanisms of inflammatory response in secondary brain injury: a review of computational approaches, challenges, and future directionsFatemeh Jafarabadi, Meenal Datta, Maria A Holland
Frontiers in Oncology|September 5, 2022
Mechanical and metabolic interplay in the brain metastatic microenvironmentKillian Onwudiwe, Alice A Burchett, Meenal Datta
Cells|December 11, 2022
Do Tumor Mechanical Stresses Promote Cancer Immune Escape?Killian Onwudiwe, Julian Najera, Saeed Siri, et al.
Research Square|June 5, 2025
Histone deacetylase inhibitors sensitize glioblastoma models to temozolomide and reprogram immunosuppressive myeloid cellsGolnaz Asaadi Tehrani, Becca Kubick, Maksym Zarodniuk, et al.
Scientific Reports|October 21, 2025
Histone deacetylase inhibitors sensitize glioblastoma models to temozolomide and reprogram immunosuppressive myeloid cellsGolnaz Asaadi Tehrani, Rebecca N Kubick, Maksym Zarodniuk, et al.
Research Square|June 9, 2023
Pan-cancer transcriptomic analysis of CNS tumor stroma identifies a population of perivascular fibroblasts that predict poor immunotherapy response in glioblastoma patientsMaksym Zarodniuk, Alexander Steele, Xin Lu, et al.
NPJ Genomic Medicine|October 26, 2023
CNS tumor stroma transcriptomics identify perivascular fibroblasts as predictors of immunotherapy resistance in glioblastoma patientsMaksym Zarodniuk, Alexander Steele, Xin Lu, et al.
Pageof 6